Musculoskeletal and tendinous details of selected anomalies in the locomotor system of anurans

IF 1.8 4区 医学 Q2 ANATOMY & MORPHOLOGY Anatomical Record-Advances in Integrative Anatomy and Evolutionary Biology Pub Date : 2024-03-26 DOI:10.1002/ar.25430
Mónica C. Soliz, Virginia Abdala
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Abstract

Previous studies on anuran anomalies predominantly examine isolated cases or focus on external and skeletal features. Our study analyzes a comprehensive sample collected from 1991 to 2017, examining the muscle-tendon system in 24 anuran species across adult, juvenile, and metamorphic stages. This extensive sample size allows us to investigate consistent anomaly patterns across different developmental stages and anuran families, exploring potential common developmental or genetic factors. Our detailed anatomical examination, encompassing musculature, tendons, and skeletal structures, revealed that 21% of the specimens displayed anomalies, a noteworthy finding considering the extensive sample size and duration of the studied sample. Of these anomalies, 17% affected the locomotor system, predominantly in the upper limbs. Key anomalies included, forelimbs and hindlimbs brachydactyly, rotation in forelimbs, partial kyphotic lordosis, and scoliosis. Notably, the digit 4 in the forelimbs and digits 4 and 5 in the hindlimbs were particularly susceptible to teratogenic effects, indicating possible prolonged exposure during development. Our study also uncovered combinations of anomalies and identified a phenotype similar to Poland syndrome. The findings validate the “Logic of Monsters” (LoMo theory) by Alberch, although the name itself may not be deemed appropriate, showing that developmental disruptions in tetrapods are not random but follow distinct sequences and patterns. The name, while unfortunate, accurately reflects the unusual nature of these developmental anomalies. This contributes to the evolving “Evo-Devo-Path” framework, highlighting the study's importance in understanding developmental disruptions in tetrapods.

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无尾类运动系统某些异常的肌肉骨骼和肌腱细节。
以往关于无尾类异常的研究主要是研究孤立的病例,或侧重于外部和骨骼特征。我们的研究分析了从1991年到2017年收集的综合样本,研究了24种无脊椎动物的肌肉-肌腱系统,涵盖成年、幼年和变态阶段。如此广泛的样本量使我们能够研究不同发育阶段和无尾类家族的一致异常模式,探索潜在的共同发育或遗传因素。我们对标本进行了详细的解剖检查,包括肌肉、肌腱和骨骼结构,结果显示21%的标本存在异常,考虑到样本量大、研究时间长,这是一个值得注意的发现。在这些异常中,17%影响到运动系统,主要是上肢。主要异常包括前肢和后肢畸形、前肢旋转、部分畸形前凸和脊柱侧弯。值得注意的是,前肢的第 4 位数和后肢的第 4 和第 5 位数特别容易受到致畸影响,这表明在发育过程中可能长期暴露于致畸环境中。我们的研究还发现了一些异常组合,并确定了一种类似于波兰综合征的表型。这些发现验证了阿尔伯奇提出的 "怪兽逻辑"(LoMo 理论),尽管这个名称本身可能并不恰当,但它表明四足动物的发育障碍并非随机的,而是遵循独特的顺序和模式。这个名字虽然令人遗憾,但却准确地反映了这些发育异常的不寻常性。这有助于不断发展的 "Evo-Devo-Path "框架,突出了该研究在理解四足动物发育中断方面的重要性。
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来源期刊
CiteScore
4.80
自引率
15.00%
发文量
266
审稿时长
4 months
期刊介绍: The Anatomical Record
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